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Characterisation of bifunctional ruthenium(II) complexes, potential DNA photo-probes. Presence of folded and unfolded conformers

机译:双功能钌(II)配合物,潜在的DNA光探针的表征。存在折叠和未折叠的构象异构体

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Novel bifunctional ruthenium(II) complexes, [Ru(TAP)(2)(POQ-Nmet)](2+) and [Ru(BPY)(2)(POQ-Nmet)](2+) (1a, 2a), containing a metallic and an organic moiety, have been prepared as photoprobes and photoreagents of DNA (TAP = 1,4,5,8-tetraazaphenanthrene, POQ-Nmet = 5-[6-(7-chloroquinolin-4-yl)-3-thia-6-azaheptanamido]-1,10-phenanthroline) . The ES mass spectrometry and H-1 NMR data in organic solvents indicate that the quinoline moiety exists in both the protonated and non-protonated form. Moreover, the comparison of the NMR data with those of the corresponding monofunctional complexes (without quinoline) evidences that [Ru(TAP)(2)(POQ-Nmet)](2+) and [Ru(BPY)(2)(POQ-Nmet)](2+) are unfolded when the quinoline unit is protonated whereas deprotonation permits folding of the molecule. In the folded state the spatial proximity of the electron donor (the organic moiety) and electron acceptor (the metallic moiety) in [Ru(TAP)(2)(POQ-Nmet)](2+) favours intramolecular photo-induced electron transfer, which has been shown in a previous study to be responsible for the very low luminescence of 1a in non-protonating solutions. The restoration of the luminescence by protonation of the quinoline moiety as observed previously is in agreement with the unfolding of the molecule demonstrated in this work. The existence of such folding-unfolding processes related to protonation is crucial for studies of 1a with DNA. [References: 34]
机译:新型双功能钌(II)配合物[Ru(TAP)(2)(POQ-Nmet)](2+)和[Ru(BPY)(2)(POQ-Nmet)](2+)(1a,2a)含有金属和有机基团的,已制备为DNA的光探针和光试剂(TAP = 1,4,5,8-四氮杂菲,POQ-Nmet = 5- [6-(7-氯喹啉-4-基)- 3-thia-6-azaheptanamido] -1,10-phenanthroline)。 ES质谱和有机溶剂中的H-1 NMR数据表明,喹啉部分以质子化和非质子化形式存在。此外,NMR数据与相应的单官能团配合物(无喹啉)的比较表明,[Ru(TAP)(2)(POQ-Nmet)](2+)和[Ru(BPY)(2)(POQ) -Nmet)](2+)在喹啉单元被质子化时解折叠,而去质子化则使分子折叠。在折叠状态下,[Ru(TAP)(2)(POQ-Nmet)](2+)中电子给体(有机部分)和电子受体(金属部分)的空间接近性有利于分子内光致电子转移,在先前的研究中表明,该现象与1a在非质子化溶液中的极低发光有关。如先前观察到的通过喹啉部分的质子化来恢复发光与在这项工作中证明的分子的展开是一致的。这种与质子化有关的折叠-展开过程的存在对于DNA的1a研究至关重要。 [参考:34]

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